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Chapter 4 Heredity and Evolution. DNA  DNA is found in the nucleus of cells, organized into single- stranded chromosomes, and tells the cell how to function.

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Presentation on theme: "Chapter 4 Heredity and Evolution. DNA  DNA is found in the nucleus of cells, organized into single- stranded chromosomes, and tells the cell how to function."— Presentation transcript:

1 Chapter 4 Heredity and Evolution

2 DNA  DNA is found in the nucleus of cells, organized into single- stranded chromosomes, and tells the cell how to function and what type of cell it’s supposed to be (i.e. liver cell, hair cell, skin cell, bone cell, etc.)  DNA is made of nucleotides (a sugar, a phosphate and one of four nitrogenous bases) Review…

3 How DNA gets copied Ribosomes Nucleus DNA Review…  Every cell must contain the genetic information and the DNA is therefore duplicated before a cell divides (replication)  After the DNA replicates inside the cell’s nucleus, it must get it’s message outside the nucleus… …through the goopy cytoplasm of the cell… …and into the Ribosomes!  RNA Cytoplasm

4  A chromosome is composed of a DNA molecule and associated proteins.  A gene is the entire sequence of DNA bases responsible for the synthesis of a protein. Genes and Chromosomes Review…

5  Exons are the only parts of genes that are expressed in an individual.  People also have Introns in their genes, copied faithfully copied by the mRNA that are later clipped out and not expressed for some reason not yet known. Genes Review…

6 Chromosome Structure  During normal cell functions, chromosomes exist as single-stranded structures.  During cell division, chromosomes consist of two strands of DNA joined at the centromere.  Since the DNA molecules have replicated, one strand of a chromosome is an exact copy of the other. Review…

7 Mitosis  Mitosis is cell division in somatic cells.  Mitosis occurs during growth and repair/replacement of tissues.  The result of mitosis is two identical daughter cells that are genetically identical to the original cell.  Here’s the steps… Review…

8 Mitosis  The cell is involved in metabolic activities.  DNA replication occurs, but chromosomes are not visible. Review…

9 Mitosis  The nuclear membrane disappears, and double-stranded chromosomes are visible. Review…

10 Mitosis  The chromosomes align themselves at the center of the cell. Review…

11 Mitosis  The chromosomes split at the centromere, and the strands separate and move to opposite ends of the dividing cell. Review…

12 Mitosis  The cell membrane pinches in as the cell continues to divide.  The chromosomes begin to uncoil (below). Review…

13 Mitosis  After mitosis is complete, there are two identical daughter cells.  The nuclear membrane is present, and chromosomes are no longer visible. Review…

14 Meiosis  Cell division in specialized cells in ovaries and testes.  Meiosis involves two divisions and results in four daughter cells, each containing only half the original number of chromosomes.  These cells can develop into gametes. Review…


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